P. Pannuto, Yoonmyung Lee, B. Kempke, D. Sylvester, D. Blaauw, P. Dutta
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引用次数: 4
摘要
在这项工作中,我们揭示了在资源极度受限的平台上连接传统系统和新系统的挑战。我们发现,即使尝试使用工业标准协议(I2C),超低功耗设计所需的协议修改也意味着接口仍然是非平凡的。我们提出了一个功能性的0.4mm × 0.8mm ARM Cortex M0,具有3KB RAM, 24个gpio和超低功耗I2C接口。该芯片是密歇根微模(M3)项目的一部分,该项目旨在为毫米尺度的通用传感建立一个完整的软件和硬件平台。我们演示了一个I2C接口电路,允许商用硬件编程和与芯片交互,并展示了毫米级传感革命的开始。
In this work we expose the challenges of interfacing both conventional and new systems with an extremely resource constrained platform. We find that even when attempts are made to utilize an industry standard protocol (I2C), necessary protocol modifications for ultra-low power design means that interfacing remains non-trivial. We present a functional 0.4mm × 0.8mm ARM Cortex M0 with 3KB of RAM, 24 GPIOs, and an ultra-low power I2C interface. This chip is part of the Michigan Micro Mote (M3) project, which is designed to build a complete software and hardware platform for general purpose sensing at the millimeter scale. We demo an I2C interface circuit allowing commercial hardware to program and interact with the chip and present the beginning of the millimeter scale sensing revolution.